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August 8, 2003Science907 citations

An All-Optical Quantum Gate in a Semiconductor Quantum Dot

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XLXiaoqin LiYWYanwen WuDSD. G. Steel

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Abstract

We report coherent optical control of a biexciton (two electron-hole pairs), confined in a single quantum dot, that shows coherent oscillations similar to the excited-state Rabi flopping in an isolated atom. The pulse control of the biexciton dynamics, combined with previously demonstrated control of the single-exciton Rabi rotation, serves as the physical basis for a two-bit conditional quantum logic gate. The truth table of the gate shows the features of an all-optical quantum gate with interacting yet distinguishable excitons as qubits. Evaluation of the fidelity yields a value of 0.7 for the gate operation. Such experimental capability is essential to a scheme for scalable quantum computation by means of the optical control of spin qubits in dots.

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Cite This Study

Li et al. (2003) studied this question.

synapsesocial.com/papers/69d8afb28cb8f39931ae3978https://doi.org/10.1126/science.1083800
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